首页> 美国卫生研究院文献>The Journal of Molecular Diagnostics : JMD >Development of a Rapid Automated Influenza A Influenza B and Respiratory Syncytial Virus A/B Multiplex Real-Time RT-PCR Assay and Its Use during the 2009 H1N1 Swine-Origin Influenza Virus Epidemic in Milwaukee Wisconsin
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Development of a Rapid Automated Influenza A Influenza B and Respiratory Syncytial Virus A/B Multiplex Real-Time RT-PCR Assay and Its Use during the 2009 H1N1 Swine-Origin Influenza Virus Epidemic in Milwaukee Wisconsin

机译:快速自动甲型乙型流感和呼吸道合胞病毒A / B多重实时RT-PCR检测方法的开发及其在威斯康星州密尔沃基市2009 H1N1猪源性流感病毒流行中的应用

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摘要

Rapid, semiautomated, and fully automated multiplex real-time RT-PCR assays were developed and validated for the detection of influenza (Flu) A, Flu B, and respiratory syncytial virus (RSV) from nasopharyngeal specimens. The assays can detect human H1N1, H3N2, and swine-origin (S-OIV) H1N1 Flu A viruses and were effectively used to distinguish Flu A infections (of all subtypes) from Flu B and RSV infections during the current S-OIV outbreak in Milwaukee, WI. The analytical limits of detection were 10−2 to 101 TCID50/ml depending on the platform and analyte and showed only one minor cross-reaction among 23 common respiratory pathogens (intermittent cross-reaction to adenovirus at >107 TCID50/ml). A total of 100 clinical samples were tested by tissue culture, both automated assays, and the US Food and Drug Administration-approved ProFlu+ assay. Both the semiautomated and fully automated assays exhibited greater overall (Flu A, Flu B, and RSV combined) clinical sensitivities (93 and 96%, respectively) and individual Flu A sensitivities (100%) than the Food and Drug Administration-approved test (89% overall sensitivity and 93% Flu A sensitivity). All assays were 99% specific. During the S-OIV outbreak in Milwaukee, WI, the fully automated assay was used to test 1232 samples in 2 weeks. Flu A was detected in 134 clinical samples (126 H1N1 S-OIV, 5 H1N1 [human], and 1 untyped) with 100% positive agreement compared with other “in-house” validated molecular assays, with only 2 false-positive results. Such accurate testing using automated high-throughput molecule systems should allow clinicians and public health officials to react quickly and effectively during viral outbreaks.
机译:开发了快速,半自动和全自动的多重实时RT-PCR检测方法,并进行了验证,可用于检测鼻咽标本中的流感(Flu)A,Flu B和呼吸道合胞病毒(RSV)。该检测方法可以检测人的H1N1,H3N2和猪源性(S-OIV)H1N1流感A病毒,并且可以有效地用于区分当前S-OIV爆发期间的流感A(所有亚型)感染与流感B和RSV感染。威斯康星州密尔沃基。根据平台和分析物的不同,检测分析限为10 −2 至10 1 TCID50 / ml,并且在23种常见呼吸道病原体中仅显示出较小的交叉反应(间歇性> 10 7 TCID50 / ml与腺病毒发生交叉反应)。通过组织培养,自动测定和美国食品药品监督管理局批准的ProFlu +测定,对总共100个临床样品进行了测试。半自动化和全自动测定均显示出比食品药品监督管理局批准的测试更高的整体(敏感性A,流感B和RSV)(分别为93和96%)和单独的敏感性A(100%)(整体灵敏度为89%,流感A灵敏度为93%)。所有测定都是99%特异性的。在威斯康星州密尔沃基爆发S-OIV期间,使用了全自动测定法在2周内测试了1232个样品。与其他“内部”验证的分子分析相比,在134个临床样品(126个H1N1 S-OIV,5个H1N1 [人类]和1个未分型)中检测到A型流感,与其他经过“内部”验证的分子分析相比,A型流感的确诊率为假阳性。使用自动化的高通量分子系统进行的如此精确的测试应使临床医生和公共卫生官员能够在病毒暴发期间迅速有效地做出反应。

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